We report an algorithm to extract equations of motion for orbits of arbitrarily high periods generated by iteration of the Pincherle map, the operational kernel used in the so-called chaotic computers. The performance of the algorithm is illustrated explicitly by extracting expeditiously, among others, an orbit buried inside a polynomial cluster of equations with degree exceeding one billion, out of reach by ordinary brute-force factorization. Large polynomial clusters are responsible for the organization of the phase-space and knowledge of this organization requires decomposing such clusters. (C) 2016 The Author(s). Published by Elsevier B.V
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We have computed the integrated autocorrelation function for different families of geosynchronous, i...
1 FFT techniques to study chaos A review of the many techniques used to map chaos is found in Contop...
We report an algorithm to extract equations of motion for orbits of arbitrarily high periods generat...
AbstractWe report an algorithm to extract equations of motion for orbits of arbitrarily high periods...
this article is contained in Section 3 where we develop a global Newton's method, coupled with ...
We explore the possibility of extending the stabilizing transformations approach [ J. J. Crofts and ...
An algorithm for detecting unstable periodic orbits in chaotic systems [Phys. Rev. E, 60 (1999), pp....
Context. This paper introduces a new approach for solving the Kepler equation for hyperbolic orbits....
Context. Over short time-intervals, planetary ephemerides have traditionally been represented in ana...
We present a rigorous analysis and numerical evidence indicating that a recently developed methodolo...
Computer program uses an iterative method to construct precisely periodic orbits which dynamically a...
Abstract. The class of Swarm Intelligence algorithms consists of stochastic optimization methods tha...
A point particle sliding freely on a two-dimensional surface of constant negative curvature (Hadamar...
A computational procedure that allows the detection of a new type of high-dimensional chaotic saddle...
http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAM...
We have computed the integrated autocorrelation function for different families of geosynchronous, i...
1 FFT techniques to study chaos A review of the many techniques used to map chaos is found in Contop...
We report an algorithm to extract equations of motion for orbits of arbitrarily high periods generat...
AbstractWe report an algorithm to extract equations of motion for orbits of arbitrarily high periods...
this article is contained in Section 3 where we develop a global Newton's method, coupled with ...
We explore the possibility of extending the stabilizing transformations approach [ J. J. Crofts and ...
An algorithm for detecting unstable periodic orbits in chaotic systems [Phys. Rev. E, 60 (1999), pp....
Context. This paper introduces a new approach for solving the Kepler equation for hyperbolic orbits....
Context. Over short time-intervals, planetary ephemerides have traditionally been represented in ana...
We present a rigorous analysis and numerical evidence indicating that a recently developed methodolo...
Computer program uses an iterative method to construct precisely periodic orbits which dynamically a...
Abstract. The class of Swarm Intelligence algorithms consists of stochastic optimization methods tha...
A point particle sliding freely on a two-dimensional surface of constant negative curvature (Hadamar...
A computational procedure that allows the detection of a new type of high-dimensional chaotic saddle...
http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAM...
We have computed the integrated autocorrelation function for different families of geosynchronous, i...
1 FFT techniques to study chaos A review of the many techniques used to map chaos is found in Contop...